CN205764721U - Converter assembling detection streamline - Google Patents
Converter assembling detection streamline Download PDFInfo
- Publication number
- CN205764721U CN205764721U CN201620503098.7U CN201620503098U CN205764721U CN 205764721 U CN205764721 U CN 205764721U CN 201620503098 U CN201620503098 U CN 201620503098U CN 205764721 U CN205764721 U CN 205764721U
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Abstract
This utility model belongs to pipelining field, especially relates to a kind of converter assembling detection streamline, includes main line, and main line side is provided with belt conveyor line, main line and belt conveyor line and is externally provided with track type guide rail, and guide rail is provided with AGV dolly.Described main line includes assembly line, initial survey line, aging line, eventually inspection line, reprocesses line and material subordinate line.This utility model is connected with PC by PLC, wireless WiFi by AGV dolly, PC carry out Communication Control, and AGV dolly 4 dispensing is reached the standard grade, and improves logistic efficiency, thus improves production efficiency.Automatically passing in and out each pipeline and detection, production equipment by jacking translation mechanism, automaticity is high, reduces human cost.
Description
Technical field
This utility model belongs to pipelining field, especially relates to a kind of converter assembling detection streamline.
Background technology
Along with expanding economy and growing science and technology, factory process produces and also develops to automation direction, it will usually formulates for the product produced and produces assembling line accordingly, is greatly improved production efficiency, the quality of production and productivity effect.
The most common converter assembling detection streamline, in its work process, is by manually by promoting dolly to transport dispensing, carries out assembly work, by detection and localization manually after assembling on the workbench that each is independent.Traditional processing mode, human cost is higher, and logistics speed is low, and there is certain error rate, ultimately results in production efficiency low.
Utility model content
In place of the purpose of this utility model is intended to solve the deficiencies in the prior art, and providing the assembling of a kind of pole, detection and the aging converter assembling detection streamline being integrated, automaticity is high, and production efficiency is high.
The purpose of this utility model is solved by following technical proposal:
A kind of converter assembling detection streamline, it is characterised in that: including main line, main line side is provided with belt conveyor line, main line and belt conveyor line and is externally provided with track type guide rail, and guide rail is provided with AGV dolly;
Described main line includes assembly line, initial survey line, aging line, eventually inspection line, reprocesses line and material subordinate line;
Described assembly line is longitudinally disposed, and assembly line front end is provided with line end elevator;
Described initial survey line includes the initial survey pipeline of horizontally set and is arranged on the initial survey cabinet on rear side of initial survey pipeline, and initial survey pipeline left end and jacking translation mechanism connect;
Described line of reprocessing is set in parallel on rear side of initial survey pipeline, reprocesses line right-hand member and initial survey pipeline right-hand member connects, and reprocesses line left end and initial survey pipeline middle-end connects;
Described aging line is arranged on front side of initial survey line, including horizontally set aging transmission line, be horizontally installed on the aging defective pipeline on front side of aging transmission line and be arranged on the aging cabinet on rear side of aging transmission line;Being provided with longitudinally disposed aging feeding line, aging transmission line right-hand member and aging feeding line on the right side of aging transmission line to connect, aging feeding line rear end and initial survey pipeline right-hand member connect;Be provided with on the left of aging transmission line longitudinally disposed aging go out stockline, aging transmission line left end and aging go out stockline connect, aging defective pipeline left end and aging go out stockline connect;
The described line of inspection eventually is arranged on front side of aging defective pipeline, including examining eventually of horizontally set pipeline, being disposed longitudinally on and detect stockline the end on the right side of inspection pipeline eventually and be arranged on and examine cabinet the end on rear side of inspection pipeline eventually, eventually inspection pipeline left end and aging go out stockline connect, eventually inspection pipeline right-hand member and eventually detection stockline connect;Described aging defective pipeline right-hand member and eventually detection stockline connect, and the described stockline of detection eventually is on the right side of aging feeding line, and detection stockline rear end is provided with transfer robot eventually, and transfer robot connects detection stockline and belt conveyor line eventually;
Described material subordinate line be disposed longitudinally on assembly line and aging go out between stockline, material subordinate line is double-deck material subordinate line.
Preferably, initial survey pipeline described in the utility model, reprocess line, aging transmission line and eventually inspection pipeline be power roller line.
Preferably, assembly line described in the utility model, aging feeding line, aging go out stockline, aging defective pipeline and eventually detection stockline be double-speed chain.
Preferably, this utility model also includes jacking translation mechanism, described assembly line, initial survey line, aging line, eventually inspection line and reprocess line and connected by jacking translation mechanism.
Preferably, this utility model also includes the working plate for conveying.
Preferably, the bar number of main line described in the utility model is more than 3.
Preferably, the bar number of aging line described in the utility model is more than 2.
Preferably, assembly line described in the utility model is provided with multiple electronic display and multiple removal type workbench, electronic display and removal type workbench one_to_one corresponding.
Preferably, this utility model also includes control system, and described control system includes PLC and PC.
Compared to the prior art this utility model has the characteristics that and beneficial effect:
1, this streamline passes in and out each pipeline and detection, production equipment automatically by jacking translation mechanism, and automaticity is high, reduces human cost, improves production efficiency, and product carries out monitoring the most in real time and management.
2, this streamline is connected with PC by PLC, wireless WiFi by AGV dolly, PC carry out Communication Control, and real-time record associated valid data, and AGV dolly 4 dispensing is reached the standard grade, and improves logistic efficiency, thus improves production efficiency.
Accompanying drawing explanation
Fig. 1 is this utility model main TV structure schematic diagram.
Fig. 2 is this utility model perspective view.
Fig. 3 is this utility model main line structure for amplifying schematic diagram.
Fig. 4 is this utility model main line work process structural representation.
Detailed description of the invention
Below in conjunction with accompanying drawing, this utility model is described in further details.
As shown in Figure 1 and Figure 2, a kind of converter assembling detection streamline, include main line 1, main line 1 side is provided with belt conveyor line 2, main line 1 and belt conveyor line 2 and is externally provided with track type guide rail 3, and guide rail 3 is provided with AGV dolly 4.Main line 1 includes assembly line 5, initial survey line 6, aging line 7, eventually inspection line 8, reprocesses line 9 and material subordinate line 10.
Described assembly line 5 is longitudinally disposed, and assembly line 5 front end is provided with line end elevator 11.
As shown in Figure 3, Figure 4, described initial survey line 6 includes the initial survey pipeline 13 of horizontally set and is arranged on the initial survey cabinet 14 on rear side of initial survey pipeline 13, initial survey pipeline 13 left end and jacking translation mechanism 12 and connects.
Described line 9 of reprocessing is set in parallel on rear side of initial survey pipeline 13, reprocesses line 9 right-hand member and initial survey pipeline 13 right-hand member connects, and reprocesses line 9 left end and initial survey pipeline 13 middle-end connects.
Described aging line 7 is arranged on front side of initial survey line 6, including horizontally set aging transmission line 15, be horizontally installed on the aging defective pipeline 16 on front side of aging transmission line 15 and be arranged on the aging cabinet 17 on rear side of aging transmission line 15;Being provided with longitudinally disposed aging feeding line 18, aging transmission line 15 right-hand member and aging feeding line 18 on the right side of aging transmission line 15 to connect, aging feeding line 18 rear end and initial survey pipeline 13 right-hand member connect;Be provided with on the left of aging transmission line 15 longitudinally disposed aging go out stockline 19, aging transmission line 15 left end and aging go out stockline 19 connect, aging defective pipeline 16 left end and aging go out stockline 19 connect.
The described line 8 of inspection eventually is arranged on front side of aging defective pipeline 16, including examining eventually of horizontally set pipeline 20, being disposed longitudinally on and detect stockline 21 end on the right side of inspection pipeline 20 eventually and be arranged on and examine cabinet 22 end on rear side of inspection pipeline 20 eventually, eventually inspection pipeline 20 left end and aging go out stockline 21 connect, eventually inspection pipeline 20 right-hand member and eventually detection stockline 21 connect;Described aging defective pipeline 16 right-hand member and eventually detection stockline 21 connect, and the described stockline 21 of detection eventually is on the right side of aging feeding line 18, and detection stockline 21 rear end is provided with transfer robot 23 eventually, and transfer robot 23 connects detection stockline 21 and belt conveyor line 2 eventually.
Described material subordinate line 10 be disposed longitudinally on assembly line 5 and aging go out between stockline 19, material subordinate line 10 is double-deck material subordinate line.
Preferably, initial survey pipeline 13 described in the utility model, reprocess line 9, aging transmission line 15 and eventually inspection pipeline 20 be power roller line.
Preferably, assembly line 5 described in the utility model, aging feeding line 18, aging go out stockline 19, aging defective pipeline 16 and eventually detection stockline 21 be double-speed chain.
Preferably, this utility model also includes jacking translation mechanism 12, described assembly line 5, initial survey line 6, aging line 7, eventually inspection line 8 and reprocess line 9 and connected by jacking translation mechanism 12.
Preferably, this utility model also includes the working plate 26 for conveying.
Preferably, the bar number of main line 1 described in the utility model is more than 3.
Preferably, the bar number of aging line 7 described in the utility model is more than 2.
Preferably, assembly line 5 described in the utility model is provided with multiple electronic display 24 and multiple removal type workbench 25, electronic display 24 and removal type workbench 25 one_to_one corresponding.
Preferably, this utility model also includes control system, and described control system includes PLC and PC.
The work process of this streamline is as follows:
First by the AGV dolly 4 arranged on guides 3, hopper delivered to material subordinate line 10 upper strata to be processed, add man-hour, hopper is taken out by the workman at assembly line 5, product is placed on removal type workbench 25 assembling, after assembling, product is placed on the working plate 26 on assembly line 5, is transported to assembly line 5 rear end, jacking translation mechanism 12 is transported on initial survey pipeline 13, and after manually making to be finished hopper, empty van is placed on feeding subordinate line 10 lower floor and by AGV dolly 4, empty van is connect away.
The product entered on initial survey pipeline 13 is detected by initial survey cabinet 14, as fruit product is qualified, carry and enter into aging feeding line 18 to the right, as fruit product is defective, be transported to reprocess on line 9 by jacking translation mechanism 12 assembling manually carry out reprocessing and treat that workpiece returns on initial survey pipeline 13 after reprocessing, qualified after product enter into aging feeding line 18 by being arranged on the jacking translation mechanism 12 of initial survey pipeline 13 right-hand member.
Then product shunted and sort, shunting and the sequence of product can pass through bar code identification, the aging transmission line 15 allowing product enter correspondence automatically is carried out burin-in process by aging cabinet 17, eventually off aging transmission line 15 enter into aging go out stockline 19, aging underproof product is gone ahead of the rest be transported to detect eventually stockline 21 by being carried out the defective pipeline of picture 16, arrives and reprocesses line 9 and reprocess.And aging qualified product enters into inspection line 8 eventually, product is through inspection pipeline 20 eventually and enters into inspection cabinet 22 inspection eventually eventually, and last substandard product is dispensed into reprocess and reprocesses on line 9, and qualified products are then rolled off the production line on belt conveyor line 2 by transfer robot 23.Then refluxed by line end elevator 11 and AGV dolly 4 for transportation tooling plate 26.
This utility model uses Position servo control technology for our location structure of turnover automatically of employing of difficult point solving automatically to pass in and out detection, operationally pushed location by accurate cylinder, detecting tool signal communication, uses bar code to shunt, it is ensured that the unobstructed and efficiency of detection of logistics.
AGV dolly 4 is connected with PC by PLC, wireless WiFi, PC carry out Communication Control, and real-time record associated valid data, and AGV dolly 4 accessory of providing and delivering is reached the standard grade, raising logistic efficiency.
Specific embodiment described herein is only to this utility model spirit explanation for example.Described specific embodiment can be made various amendment or supplements or use similar mode to substitute by this utility model person of ordinary skill in the field, but without departing from spirit of the present utility model or surmount scope defined in appended claims.
Claims (10)
1. a converter assembling detection streamline, it is characterised in that: including main line, main line side is provided with belt conveyor line, main line and belt conveyor line and is externally provided with track type guide rail, and guide rail is provided with AGV dolly;
Described main line includes assembly line, initial survey line, aging line, eventually inspection line, reprocesses line and material subordinate line;
Described assembly line is longitudinally disposed, and assembly line front end is provided with line end elevator;
Described initial survey line includes the initial survey pipeline of horizontally set and is arranged on the initial survey cabinet on rear side of initial survey pipeline, and initial survey pipeline left end and jacking translation mechanism connect;
Described line of reprocessing is set in parallel on rear side of initial survey pipeline, reprocesses line right-hand member and initial survey pipeline right-hand member connects, and reprocesses line left end and initial survey pipeline middle-end connects;
Described aging line is arranged on front side of initial survey line, including horizontally set aging transmission line, be horizontally installed on the aging defective pipeline on front side of aging transmission line and be arranged on the aging cabinet on rear side of aging transmission line;Being provided with longitudinally disposed aging feeding line, aging transmission line right-hand member and aging feeding line on the right side of aging transmission line to connect, aging feeding line rear end and initial survey pipeline right-hand member connect;Be provided with on the left of aging transmission line longitudinally disposed aging go out stockline, aging transmission line left end and aging go out stockline connect, aging defective pipeline left end and aging go out stockline connect;
The described line of inspection eventually is arranged on front side of aging defective pipeline, including examining eventually of horizontally set pipeline, being disposed longitudinally on and detect stockline the end on the right side of inspection pipeline eventually and be arranged on and examine cabinet the end on rear side of inspection pipeline eventually, eventually inspection pipeline left end and aging go out stockline connect, eventually inspection pipeline right-hand member and eventually detection stockline connect;Described aging defective pipeline right-hand member and eventually detection stockline connect, and the described stockline of detection eventually is on the right side of aging feeding line, and detection stockline rear end is provided with transfer robot eventually, and transfer robot connects detection stockline and belt conveyor line eventually;
Described material subordinate line be disposed longitudinally on assembly line and aging go out between stockline, material subordinate line is double-deck material subordinate line.
Converter the most according to claim 1 assembling detection streamline, it is characterised in that: described initial survey pipeline, reprocess line, aging transmission line and eventually inspection pipeline be power roller line.
Converter the most according to claim 1 assembling detection streamline, it is characterised in that: described assembly line, aging feeding line, aging go out stockline, aging defective pipeline and eventually detection stockline be double-speed chain.
Converter the most according to claim 1 assembling detection streamline, it is characterised in that: also include jacking translation mechanism, described assembly line, initial survey line, aging line, eventually inspection line and reprocess line and connected by jacking translation mechanism.
Converter the most according to claim 1 assembling detection streamline, it is characterised in that: also include the working plate for conveying.
Converter the most according to claim 1 assembling detection streamline, it is characterised in that: the bar number of described main line is more than 3.
Converter the most according to claim 1 assembling detection streamline, it is characterised in that: the bar number of described aging line is more than 2.
Converter the most according to claim 1 assembling detection streamline, it is characterised in that: described assembly line is provided with multiple electronic display and multiple removal type workbench, electronic display and removal type workbench one_to_one corresponding.
Converter the most according to claim 1 assembling detection streamline, it is characterised in that: also including control system, described control system includes PLC and PC.
Converter the most according to claim 1 assembling detection streamline, it is characterised in that: also include bar code cognitron.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201620503098.7U CN205764721U (en) | 2016-05-30 | 2016-05-30 | Converter assembling detection streamline |
Applications Claiming Priority (1)
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CN201620503098.7U CN205764721U (en) | 2016-05-30 | 2016-05-30 | Converter assembling detection streamline |
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CN205764721U true CN205764721U (en) | 2016-12-07 |
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CN201620503098.7U Withdrawn - After Issue CN205764721U (en) | 2016-05-30 | 2016-05-30 | Converter assembling detection streamline |
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Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105855831A (en) * | 2016-05-30 | 2016-08-17 | 浙江精典数控设备有限公司 | Frequency converter assembly detection production line |
CN106826156A (en) * | 2016-12-28 | 2017-06-13 | 浙江思玛特机器人科技有限公司 | A kind of Belt Conveying assembly machine |
CN108356523A (en) * | 2018-05-02 | 2018-08-03 | 江苏易元新材料科技有限公司 | A kind of assembling system |
CN110045214A (en) * | 2019-05-29 | 2019-07-23 | 东明兴业科技股份有限公司 | A kind of small household appliances assembly line user mode automatic checkout system and method |
-
2016
- 2016-05-30 CN CN201620503098.7U patent/CN205764721U/en not_active Withdrawn - After Issue
Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105855831A (en) * | 2016-05-30 | 2016-08-17 | 浙江精典数控设备有限公司 | Frequency converter assembly detection production line |
CN106826156A (en) * | 2016-12-28 | 2017-06-13 | 浙江思玛特机器人科技有限公司 | A kind of Belt Conveying assembly machine |
CN106826156B (en) * | 2016-12-28 | 2019-12-27 | 浙江小宇科技股份有限公司 | Belt conveying and assembling machine |
CN108356523A (en) * | 2018-05-02 | 2018-08-03 | 江苏易元新材料科技有限公司 | A kind of assembling system |
CN108356523B (en) * | 2018-05-02 | 2024-03-26 | 江苏易元新材料科技有限公司 | Assembling system |
CN110045214A (en) * | 2019-05-29 | 2019-07-23 | 东明兴业科技股份有限公司 | A kind of small household appliances assembly line user mode automatic checkout system and method |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
AV01 | Patent right actively abandoned |
Granted publication date: 20161207 Effective date of abandoning: 20171110 |
|
AV01 | Patent right actively abandoned |